Structural diversity and oligomerization of bacterial ubiquitin-like proteins.

细菌泛素样蛋白的结构多样性和寡聚化

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作者:Gong Minheng, Ye Qiaozhen, Gu Yajie, Chambers Lydia R, Bobkov Andrey A, Arakawa Neal K, Matyszewski Mariusz, Corbett Kevin D
Bacteria possess a variety of operons with homology to eukaryotic ubiquitination pathways that encode predicted E1, E2, E3, deubiquitinase, and ubiquitin-like proteins. Some of these pathways have recently been shown to function in anti-bacteriophage immunity, but the biological functions of others remain unknown. Here, we show that ubiquitin-like proteins in two bacterial operon families show surprising architectural diversity, possessing one to three β-grasp domains preceded by diverse N-terminal domains. We find that a large group of bacterial ubiquitin-like proteins possess three β-grasp domains and form homodimers and helical filaments mediated by conserved Ca(2+) ion binding sites. Our findings highlight a distinctive mode of self-assembly for ubiquitin-like proteins and suggest that Ca(2+)-mediated ubiquitin-like protein filament assembly and/or disassembly enables cells to sense and respond to stress conditions that alter intracellular metal ion concentration.

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